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首页> 外文期刊>Journal of Molecular Structure >Spectroscopic investigations and molecular docking study of 3-(1H-imidazol-1(-)yl)-1-phenylpropan-1-one, a potential precursor to bioactive agents
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Spectroscopic investigations and molecular docking study of 3-(1H-imidazol-1(-)yl)-1-phenylpropan-1-one, a potential precursor to bioactive agents

机译:3-(1H-咪唑-1(-)基)-1-苯基丙烷-1-酮的光谱学研究和分子对接研究

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摘要

The optimized molecular structure, vibrational wavenumbers, corresponding vibrational assignments of 3-(1H-imidazol-1-yl)-1-phenylpropan-l-one have been investigated theoretically and experimentally. The calculated geometrical parameters of the title compound are in agreement with the reported XRD data. The HOMO and LUMO analysis is used to determine the charge transfer within the molecule. The stability of the molecule arising from hyper-conjugative interaction and charge delocalization has been analyzed using NBO analysis. Molecular electrostatic potential was performed by the DET method and from the MEP plot, it is evident that the negative charge covers the carbonyl group and the nitrogen atom N-3 of the imidazole ring and the positive region is over the remaining portions of the molecule. The first and second hyperpolarizabilities are calculated and the first hyperpolarizability of the title compound is 16.99 times that of standard NLO material urea and the title compound and its derivatives are good object for further studies in nonlinear optics. The docked ligand title compound forms a stable complex with plasmodium falciparum and gives a binding affinity value of -5.5 kcal/mol and the preliminary results suggest that the compound might exhibit antimalarial activity against plasmodium falciparum. (C) 2015 Elsevier B.V. All rights reserved.
机译:对3-(1H-咪唑-1-基)-1-苯基丙烷-1-酮的最佳分子结构,振动波数以及相应的振动分配进行了理论和实验研究。标题化合物的计算几何参数与报道的XRD数据一致。 HOMO和LUMO分析用于确定分子内的电荷转移。已经使用NBO分析法分析了由于超共轭相互作用和电荷离域而产生的分子稳定性。分子静电势是通过DET方法进行的,从MEP图中可以看出,负电荷覆盖了咪唑环的羰基和氮原子N-3,正区域位于分子的其余部分之上。计算出第一和第二超极化率,标题化合物的第一超极化率是标准NLO材料尿素的16.99倍,标题化合物及其衍生物是在非线性光学领域进一步研究的好对象。对接的配体标题化合物与恶性疟原虫形成稳定的复合物,结合亲和力值为-5.5 kcal / mol,初步结果表明该化合物可能对恶性疟原虫具有抗疟活性。 (C)2015 Elsevier B.V.保留所有权利。

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